Chakib Hrizi | Chemistry and Materials Science | Excellence in Research Award

Assist. Prof. Dr. Chakib Hrizi | Chemistry and Materials Science | Excellence in Research Award

Assist. Prof. Dr. Chakib Hrizi | Chemistry and Materials Science | Faculty of Science of Gabes | University of Gabes Faculty of Sciences of Gabes | Tunisia  

Assist. Prof. Dr. Chakib Hrizi is a distinguished academic and researcher in the field of inorganic and solid-state chemistry, widely recognized for his expertise in crystallography, hybrid materials synthesis, and material characterization. As an Assistant Professor at the Faculty of Science of Gabes, Gabes University, he has developed a strong academic and research career focused on advancing knowledge in functional organic-inorganic hybrid materials and their applications in optoelectronics and energy conversion. His research contributions demonstrate a balance of scientific innovation, teaching excellence, and leadership in academic governance, making him an influential figure in the broader field of material sciences.

Professional Profile 

Education

Assist. Prof. Dr. Chakib Hrizi has pursued a robust academic journey in chemistry, building strong foundations in industrial, inorganic, and solid-state chemistry. He completed advanced studies in industrial chemistry, which provided him with a comprehensive understanding of chemical processes and applications. His specialization in inorganic chemistry further strengthened his knowledge in crystallography, supramolecular chemistry, and hybrid materials. He earned his doctoral degree in inorganic chemistry from Sfax University, where his thesis focused on the elaboration and characterization of organic-inorganic hybrid halobismuthates(III), with a strong emphasis on their structural, optical, and phase transition properties. This academic trajectory established him as an expert in functional materials with potential applications in advanced technologies, while also preparing him to lead innovative research and mentor future scientists.

Experience

Assist. Prof. Dr. Chakib Hrizi has extensive professional experience as a faculty member, researcher, and contributor to international collaborations. At the Faculty of Science of Gabes, he has taught a wide range of subjects, including inorganic chemistry, solid-state chemistry, crystallography, quantum chemistry, and chemical kinetics. His pedagogical approach integrates theoretical knowledge with experimental training, ensuring students gain practical skills in material synthesis and characterization. Professionally, he has been actively engaged in research internships and collaborations, including international exposure at prominent institutions such as the Néel Institute (CNRS, France). Beyond teaching and research, he has played an important role in academic administration by contributing to departmental committees, curriculum development, and the promotion of postgraduate programs in materials and environmental sciences. His service in faculty and university scientific councils reflects his commitment to advancing institutional academic excellence and scientific leadership.

Research Interest

The research interests of Assist. Prof. Dr. Chakib Hrizi span across inorganic chemistry, materials science, and solid-state physics, with particular emphasis on the synthesis and characterization of hybrid materials. His work on functional halometallates(III) has contributed significantly to the exploration of materials with applications in optoelectronics, luminescence, and energy conversion. He is also deeply involved in studying supramolecular coordination complexes based on bismuth(III) and antimony(III), as well as functionalized energetic compounds with potential technological applications. His expertise includes crystal growth optimization, solvothermal synthesis, vibrational spectroscopy, optical studies, and advanced structural characterization using single-crystal X-ray diffraction. By combining theoretical insight with practical experimentation, he continues to push the boundaries of material chemistry while fostering interdisciplinary collaboration to address scientific and industrial challenges.

Award

Assist. Prof. Dr. Chakib Hrizi is being nominated for his outstanding contributions to the development of advanced inorganic and hybrid materials, his impactful publications in internationally reputed journals, and his leadership in academic and research activities. His research output, mentorship of students, and active role in shaping scientific programs at Gabes University highlight his dedication to advancing chemistry as a discipline. This recognition reflects his influence as a researcher and educator, his engagement in international collaborations, and his contributions to the broader scientific community.

Selected Publication

  • Synthesis and Crystal Structure of [C6H4OCH3NH3]2BiCl5 (2010, 45 Citations)

  • Crystal Structure, Vibrational and Optical Properties of a New Self-Organized Material Containing Iodide Anions of Bismuth(III) (2011, 38 Citations)

  • Structural Characterization, Vibrational and Optical Properties of a Novel One-Dimensional Organic-Inorganic Hybrid Iodobismuthate(III) Material (2012, 51 Citations)

  • Synthesis, Crystal Structure, Vibrational, Optical and Dielectric Properties of 2-(2-Aminoethyl)-1-Methylpyrrolidinum Chloride Hexachlorobismuthate (III) Monohydrate (2014, 42 Citations)

Conclusion

Assist. Prof. Dr. Chakib Hrizi stands as a highly accomplished researcher and educator whose contributions to inorganic and hybrid material chemistry have advanced both scientific knowledge and practical applications. His academic journey, professional experience, and active engagement in international research collaborations illustrate his dedication to scientific excellence. With a strong publication record, leadership roles in academic governance, and a passion for mentoring the next generation of chemists, he exemplifies the qualities of a researcher whose work has both local and global impact. His nomination for this award is a recognition of his outstanding achievements and future potential to further advance the frontiers of materials chemistry and solid-state science.

 

Mehdi SALEM | Chemistry and Materials Science | Best Researcher Award

Mehdi SALEM | Chemistry and Materials Science | Best Researcher Award

Dr Mehdi SALEM, IMT Mines Albi, France

Dr. Mehdi Salem appears to be an excellent candidate for the Best Researcher Award due to his significant contributions in materials science and mechanical engineering, specifically in areas like thermal fatigue, high-temperature corrosion, and additive manufacturing. Below are key factors supporting his suitability:

Publication profile

google scholar

Strong Academic Background

Dr. Salem holds a Doctorate in Mechanical Engineering (2009) from Université Paul Sabatier de Toulouse, with prior degrees in materials science and general engineering. His academic foundation is rooted in prestigious institutions, reflecting his depth in research capabilities.

Professional Experience

With over a decade of experience as a research engineer at Armines – IMT Mines Albi-Carmaux and extensive post-doctoral work, Dr. Salem’s professional career focuses on high-impact research in material fatigue, metal forming processes, and additive manufacturing. His roles as a lecturer further demonstrate his academic leadership.

Expertise and Technical Contributions

His expertise spans advanced topics such as thermal fatigue, corrosion, residual stress evaluation, and additive manufacturing. His technical skills in simulation (e.g., MEF), microstructural analysis, and materials testing position him as a leading researcher in his field.

Publications and Impact

Dr. Salem’s publications, such as his work on thermal fatigue analysis and residual stresses in selective laser melting, have made a significant contribution to mechanical engineering and materials science, with citations demonstrating the relevance of his research. His published papers in top-tier journals like International Journal of Fatigue and Additive Manufacturing have garnered considerable citations, reflecting the impact of his research on both academic and industrial applications.

Multidisciplinary Collaboration

Collaborating with both academic and industrial entities, his research has addressed real-world challenges, such as improving machining quality and enhancing the durability of automotive components. His work on the effect of doum palm fibers and aluminizing on thermal fatigue demonstrates innovative problem-solving in diverse materials.

Research focus

M. Salem’s research primarily focuses on thermal fatigue, additive manufacturing, and composite materials. His work spans analyzing thermal fatigue in automotive diesel pistons and hot work tool steels to improving additive manufacturing processes like selective laser melting and cold metal transfer. He also explores the mechanical and thermal properties of materials, including aluminum alloys and gypsum mortars reinforced with natural fibers. Another key aspect of his research involves developing innovative tools to enhance machining quality and reduce harmful particulate dispersion in composite materials. 🔧🛠️🔥🌡️📊

Conclusion

Dr. Salem’s deep expertise, demonstrated impact through highly cited publications, and his significant technical achievements in thermal fatigue, additive manufacturing, and residual stress analysis make him a standout candidate for the Best Researcher Award. His ongoing contributions to both academic research and industrial applications exemplify his leadership in the field of materials science.